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Insights into the dynamics of breakup of the halo nucleus 11Be on a 64Zn target

机译:深入了解晕核破裂的动态 11 位于 64 Zn靶上

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We reexamine the elastic and breakup observables of theBe11+64Zn reaction at the near-barrier energy of 28.7 MeV. The measured quasi-elastic data are compared with CDCC and extended CDCC (XCDCC) calculations, the latter including the effect of the10Be deformation.The angular distribution of emitted10Be fragments, reported in the original analysis of this experiment, along with newly extracted10Be energy distributions, are compared with calculations for the elastic breakup and non-elastic breakup contributions. Elastic breakup, computed with CDCC, accounts for most of the observed yields. The remaining difference (~20%) is attributed to non-elastic breakup events (neutron absorption or target excitation) as confirmed by calculations performed with the model of Ichimura, Austern and Vincent (1985) .Finally, the effect of post-acceleration in the energy distribution is investigated. This effect is well accounted for by the present CDCC calculations and, according to simple kinematical considerations, is estimated to be of the order of 1 MeV, and roughly independent of the scattering angle.
机译:我们在28.7 MeV的近势垒能量下重新检查了Be11 + 64Zn反应的弹性和断裂可观察性。将测得的准弹性数据与CDCC和扩展CDCC(XCDCC)计算进行比较,后者包括10Be变形的影响。在该实验的原始分析中报告了发射的10Be碎片的角度分布以及新提取的10Be能量分布,与弹性破坏和非弹性破坏贡献的计算结果进行比较。用CDCC计算的弹性破裂占观察到的大部分产量。剩余的差异(约20%)归因于非弹性破裂事件(中子吸收或目标激发),这一点已通过Ichimura,Austern和Vincent(1985)模型进行的计算得到了证实。研究能量分布。目前的CDCC计算很好地说明了这种影响,根据简单的运动学考虑,估计这种影响约为1 MeV,并且与散射角大致无关。

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